Exact solutions of a one-dimensional mixture of spinor bosons and spinor fermions
arXiv:0907.4410 · doi:10.1016/j.nuclphysb.2009.06.003
Abstract
The exact solutions of a one-dimensional mixture of spinor bosons and spinor fermions with -function interactions are studied. Some new sets of Bethe ansatz equations are obtained by using the graded nest quantum inverse scattering method. Many interesting features appear in the system. For example, the wave function has the supersymmetry. It is also found that the ground state of the system is partial polarized, where the fermions form a spin singlet state and the bosons are totally polarized. From the solution of Bethe ansatz equations, it is shown that all the momentum, spin and isospin rapidities at the ground state are real if the interactions between the particles are repulsive; while the fermions form two-particle bounded states and the bosons form one large bound state, which means the bosons condensed at the zero momentum point, if the interactions are attractive. The charge, spin and isospin excitations are discussed in detail. The thermodynamic Bethe ansatz equations are also derived and their solutions at some special cases are obtained analytically.
25 pages, 10 figres
References in corpus (12)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Bose-Fermi Mixtures in a Three-dimensional Optical Lattice
- Localization of bosonic atoms by fermionic impurities in a 3d optical lattice
- An exactly solvable model of the BCS-BEC crossover
- Exact solution for infinitely strongly interacting Fermi gases in tight waveguides
- Realization of a strongly interacting Bose-Fermi mixture from a two-component Fermi gas
- A Degenerate Bose-Fermi Mixture of Metastable Atoms
- Applications of exact solution for strongly interacting one dimensional bose-fermi mixture: low-temperature correlation functions, density profiles and collective modes
- Exact results for the 1D interacting mixed Bose-Fermi gas
- Correlation functions of one-dimensional Bose-Fermi mixtures
- Paired state in an integrable spin-1 boson model
- Ground state properties of one-dimensional Bose-Fermi mixtures